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Published on: June 23, 2013
Dynamic association of L-selectin with the lymphocyte cytoskeletal matrix
S S Evans1, D M Schleider, L A Bowman
1Department of Immunology, Roswell Park Cancer Institute, Buffalo, NY 14263, USA. sevans@sc3101.med.buffalo.edu
Insights
L-selectin binding to HEV receptors is regulated by its association with the lymphocyte cytoskeleton. This dynamic interaction, crucial for cell adhesion, is triggered by ligand engagement and modulated by cellular conditions like hyperthermia.
Area of Science:
- Immunology
- Cell Biology
- Biochemistry
Background:
- L-selectin is vital for lymphocyte trafficking into lymphoid organs.
- It mediates adhesion by binding sialomucin-like receptors on high endothelial venules (HEVs).
- The regulation of L-selectin's interaction with the lymphocyte cytoskeleton is not fully understood.
Purpose of the Study:
- To investigate the biochemical basis of L-selectin's interaction with the lymphocyte cytoskeleton.
- To determine how this interaction is regulated and its impact on L-selectin-mediated adhesion.
Main Methods:
- Detergent-based extraction to assess L-selectin's association with the cytoskeleton.
- Stimulation with antibodies (Abs) and HEV ligands (Glycosylation-dependent cell adhesion molecule-1).
- Inhibition studies using cytoskeleton polymerization and kinase inhibitors.
- Assessment of L-selectin association under hyperthermia and with a deletion mutant.
Main Results:
- L-selectin does not constitutively associate with the detergent-insoluble cytoskeleton.
- Ligand engagement rapidly induces L-selectin redistribution to the cytoskeleton.
- Cytoskeletal association is independent of actin/microtubule polymerization and kinase activity but crucial for adhesion.
- Hyperthermia enhances L-selectin-cytoskeleton association and adhesion.
- A COOH-terminal deletion mutant of L-selectin fails to associate with the cytoskeleton and support adhesion.
Conclusions:
- The actin-based cytoskeleton dynamically controls L-selectin adhesion.
- L-selectin's COOH-terminus is essential for its cytoskeletal association and function.
- This interaction is regulated by ligand binding and cellular conditions, impacting lymphocyte extravasation.
Abstract:
L-selectin mediates lymphocyte extravasation into lymphoid tissues through binding to sialomucin-like receptors on the surface of high endothelial venules (HEV). This study examines the biochemical basis and regulation of interactions between L-selectin, an integral transmembrane protein, and the lymphocyte cytoskeleton. Using a detergent-based extraction procedure, constitutive associations between L-selectin and the insoluble cytoskeletal matrix could not be detected. However, engagement of the L-selectin lectin domain by Abs or by glycosylation-dependent cell adhesion molecule-1, an HEV-derived ligand for L-selectin, rapidly triggered redistribution of L-selectin to the detergent-insoluble cytoskeleton. L-selectin attachment to the cytoskeleton was not prevented by inhibitors of actin/microtubule polymerization (cytochalasin B, colchicine, or nocodozole) or serine/threonine and tyrosine kinase activity (staurosporine, calphostin C, or genistein), although L-selectin-mediated adhesion of human PBL was markedly suppressed by these agents. Exposure of human PBL or murine pre-B transfectants expressing full-length human L-selectin to fever-range hyperthermia also markedly increased L-selectin association with the cytoskeleton, directly correlating with enhanced L-selectin-mediated adhesion. In contrast, a deletion mutant of L-selectin lacking the COOH-terminal 11 amino acids failed to associate with the cytoskeletal matrix in response to Ab cross-linking or hyperthermia stimulation and did not support adhesion to HEV. These studies, when taken together with the previously demonstrated interaction between the L-selectin cytoplasmic domain and the cytoskeletal linker protein alpha-actinin, strongly implicate the actin-based cytoskeleton in dynamically controlling L-selectin adhesion.
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